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The genetic consequences of dog breed formation—Accumulation of deleterious genetic variation and fixation of mutations associated with myxomatous mitral valve disease in cavalier King Charles spaniels

Selective breeding for desirable traits in strictly controlled populations has generated an extraordinary diversity in canine morphology and behaviour, but has also led to loss of genetic variation and random entrapment of disease alleles. As a consequence, specific diseases are now prevalent in cer...

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Autores principales: Axelsson, Erik, Ljungvall, Ingrid, Bhoumik, Priyasma, Conn, Laura Bas, Muren, Eva, Ohlsson, Åsa, Olsen, Lisbeth Høier, Engdahl, Karolina, Hagman, Ragnvi, Hanson, Jeanette, Kryvokhyzha, Dmytro, Pettersson, Mats, Grenet, Olivier, Moggs, Jonathan, Del Rio-Espinola, Alberto, Epe, Christian, Taillon, Bruce, Tawari, Nilesh, Mane, Shrinivas, Hawkins, Troy, Hedhammar, Åke, Gruet, Philippe, Häggström, Jens, Lindblad-Toh, Kerstin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8412370/
https://www.ncbi.nlm.nih.gov/pubmed/34473707
http://dx.doi.org/10.1371/journal.pgen.1009726
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author Axelsson, Erik
Ljungvall, Ingrid
Bhoumik, Priyasma
Conn, Laura Bas
Muren, Eva
Ohlsson, Åsa
Olsen, Lisbeth Høier
Engdahl, Karolina
Hagman, Ragnvi
Hanson, Jeanette
Kryvokhyzha, Dmytro
Pettersson, Mats
Grenet, Olivier
Moggs, Jonathan
Del Rio-Espinola, Alberto
Epe, Christian
Taillon, Bruce
Tawari, Nilesh
Mane, Shrinivas
Hawkins, Troy
Hedhammar, Åke
Gruet, Philippe
Häggström, Jens
Lindblad-Toh, Kerstin
author_facet Axelsson, Erik
Ljungvall, Ingrid
Bhoumik, Priyasma
Conn, Laura Bas
Muren, Eva
Ohlsson, Åsa
Olsen, Lisbeth Høier
Engdahl, Karolina
Hagman, Ragnvi
Hanson, Jeanette
Kryvokhyzha, Dmytro
Pettersson, Mats
Grenet, Olivier
Moggs, Jonathan
Del Rio-Espinola, Alberto
Epe, Christian
Taillon, Bruce
Tawari, Nilesh
Mane, Shrinivas
Hawkins, Troy
Hedhammar, Åke
Gruet, Philippe
Häggström, Jens
Lindblad-Toh, Kerstin
author_sort Axelsson, Erik
collection PubMed
description Selective breeding for desirable traits in strictly controlled populations has generated an extraordinary diversity in canine morphology and behaviour, but has also led to loss of genetic variation and random entrapment of disease alleles. As a consequence, specific diseases are now prevalent in certain breeds, but whether the recent breeding practice led to an overall increase in genetic load remains unclear. Here we generate whole genome sequencing (WGS) data from 20 dogs per breed from eight breeds and document a ~10% rise in the number of derived alleles per genome at evolutionarily conserved sites in the heavily bottlenecked cavalier King Charles spaniel breed (cKCs) relative to in most breeds studied here. Our finding represents the first clear indication of a relative increase in levels of deleterious genetic variation in a specific breed, arguing that recent breeding practices probably were associated with an accumulation of genetic load in dogs. We then use the WGS data to identify candidate risk alleles for the most common cause for veterinary care in cKCs–the heart disease myxomatous mitral valve disease (MMVD). We verify a potential link to MMVD for candidate variants near the heart specific NEBL gene in a dachshund population and show that two of the NEBL candidate variants have regulatory potential in heart-derived cell lines and are associated with reduced NEBL isoform nebulette expression in papillary muscle (but not in mitral valve, nor in left ventricular wall). Alleles linked to reduced nebulette expression may hence predispose cKCs and other breeds to MMVD via loss of papillary muscle integrity.
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spelling pubmed-84123702021-09-03 The genetic consequences of dog breed formation—Accumulation of deleterious genetic variation and fixation of mutations associated with myxomatous mitral valve disease in cavalier King Charles spaniels Axelsson, Erik Ljungvall, Ingrid Bhoumik, Priyasma Conn, Laura Bas Muren, Eva Ohlsson, Åsa Olsen, Lisbeth Høier Engdahl, Karolina Hagman, Ragnvi Hanson, Jeanette Kryvokhyzha, Dmytro Pettersson, Mats Grenet, Olivier Moggs, Jonathan Del Rio-Espinola, Alberto Epe, Christian Taillon, Bruce Tawari, Nilesh Mane, Shrinivas Hawkins, Troy Hedhammar, Åke Gruet, Philippe Häggström, Jens Lindblad-Toh, Kerstin PLoS Genet Research Article Selective breeding for desirable traits in strictly controlled populations has generated an extraordinary diversity in canine morphology and behaviour, but has also led to loss of genetic variation and random entrapment of disease alleles. As a consequence, specific diseases are now prevalent in certain breeds, but whether the recent breeding practice led to an overall increase in genetic load remains unclear. Here we generate whole genome sequencing (WGS) data from 20 dogs per breed from eight breeds and document a ~10% rise in the number of derived alleles per genome at evolutionarily conserved sites in the heavily bottlenecked cavalier King Charles spaniel breed (cKCs) relative to in most breeds studied here. Our finding represents the first clear indication of a relative increase in levels of deleterious genetic variation in a specific breed, arguing that recent breeding practices probably were associated with an accumulation of genetic load in dogs. We then use the WGS data to identify candidate risk alleles for the most common cause for veterinary care in cKCs–the heart disease myxomatous mitral valve disease (MMVD). We verify a potential link to MMVD for candidate variants near the heart specific NEBL gene in a dachshund population and show that two of the NEBL candidate variants have regulatory potential in heart-derived cell lines and are associated with reduced NEBL isoform nebulette expression in papillary muscle (but not in mitral valve, nor in left ventricular wall). Alleles linked to reduced nebulette expression may hence predispose cKCs and other breeds to MMVD via loss of papillary muscle integrity. Public Library of Science 2021-09-02 /pmc/articles/PMC8412370/ /pubmed/34473707 http://dx.doi.org/10.1371/journal.pgen.1009726 Text en © 2021 Axelsson et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Axelsson, Erik
Ljungvall, Ingrid
Bhoumik, Priyasma
Conn, Laura Bas
Muren, Eva
Ohlsson, Åsa
Olsen, Lisbeth Høier
Engdahl, Karolina
Hagman, Ragnvi
Hanson, Jeanette
Kryvokhyzha, Dmytro
Pettersson, Mats
Grenet, Olivier
Moggs, Jonathan
Del Rio-Espinola, Alberto
Epe, Christian
Taillon, Bruce
Tawari, Nilesh
Mane, Shrinivas
Hawkins, Troy
Hedhammar, Åke
Gruet, Philippe
Häggström, Jens
Lindblad-Toh, Kerstin
The genetic consequences of dog breed formation—Accumulation of deleterious genetic variation and fixation of mutations associated with myxomatous mitral valve disease in cavalier King Charles spaniels
title The genetic consequences of dog breed formation—Accumulation of deleterious genetic variation and fixation of mutations associated with myxomatous mitral valve disease in cavalier King Charles spaniels
title_full The genetic consequences of dog breed formation—Accumulation of deleterious genetic variation and fixation of mutations associated with myxomatous mitral valve disease in cavalier King Charles spaniels
title_fullStr The genetic consequences of dog breed formation—Accumulation of deleterious genetic variation and fixation of mutations associated with myxomatous mitral valve disease in cavalier King Charles spaniels
title_full_unstemmed The genetic consequences of dog breed formation—Accumulation of deleterious genetic variation and fixation of mutations associated with myxomatous mitral valve disease in cavalier King Charles spaniels
title_short The genetic consequences of dog breed formation—Accumulation of deleterious genetic variation and fixation of mutations associated with myxomatous mitral valve disease in cavalier King Charles spaniels
title_sort genetic consequences of dog breed formation—accumulation of deleterious genetic variation and fixation of mutations associated with myxomatous mitral valve disease in cavalier king charles spaniels
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8412370/
https://www.ncbi.nlm.nih.gov/pubmed/34473707
http://dx.doi.org/10.1371/journal.pgen.1009726
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